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常见的信号转导转录因子结合位点变异可导致红细胞表型变异性。

Common variants in signaling transcription-factor-binding sites drive phenotypic variability in red blood cell traits.

机构信息

Harvard Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, USA.

Stem Cell Program and Division of Hematology/Oncology, Boston Children's Hospital, Boston, MA, USA.

出版信息

Nat Genet. 2020 Dec;52(12):1333-1345. doi: 10.1038/s41588-020-00738-2. Epub 2020 Nov 23.

Abstract

Genome-wide association studies identify genomic variants associated with human traits and diseases. Most trait-associated variants are located within cell-type-specific enhancers, but the molecular mechanisms governing phenotypic variation are less well understood. Here, we show that many enhancer variants associated with red blood cell (RBC) traits map to enhancers that are co-bound by lineage-specific master transcription factors (MTFs) and signaling transcription factors (STFs) responsive to extracellular signals. The majority of enhancer variants reside on STF and not MTF motifs, perturbing DNA binding by various STFs (BMP/TGF-β-directed SMADs or WNT-induced TCFs) and affecting target gene expression. Analyses of engineered human blood cells and expression quantitative trait loci verify that disrupted STF binding leads to altered gene expression. Our results propose that the majority of the RBC-trait-associated variants that reside on transcription-factor-binding sequences fall in STF target sequences, suggesting that the phenotypic variation of RBC traits could stem from altered responsiveness to extracellular stimuli.

摘要

全基因组关联研究确定了与人类特征和疾病相关的基因组变异。大多数与特征相关的变异位于细胞类型特异性增强子内,但控制表型变异的分子机制还不太清楚。在这里,我们表明,许多与红细胞 (RBC) 特征相关的增强子变体映射到由谱系特异性主转录因子 (MTF) 和对外界信号有反应的信号转导转录因子 (STF) 共同结合的增强子上。大多数增强子变体位于 STF 而不是 MTF 基序上,干扰各种 STF(BMP/TGF-β 导向的 SMAD 或 WNT 诱导的 TCF)的 DNA 结合,并影响靶基因表达。对工程化的人类血细胞和表达数量性状基因座的分析证实,破坏 STF 结合会导致基因表达改变。我们的结果表明,位于转录因子结合序列上的大多数与 RBC 特征相关的变异都位于 STF 靶序列中,这表明 RBC 特征的表型变异可能源于对外界刺激的反应改变。

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